Efficient all-solid-state Ce:LiLuF laser source at 309 nm

Research output: Contribution to journalArticleResearchpeer-review

Abstract

We report an all-solid-state laser giving 67 mW of 309 nm output when pumped with a frequency-quadrupled, all-solid-state Raman-shifted Nd:YAG laser. This efficient laser source has an optical-to-optical conversion efficiency of 41%, with respect to 289 nm conversion to 309 nm, and slope efficiencies of up to 62% (based on absorbed power).

LanguageEnglish
Pages132-137
Number of pages6
JournalOptics Communications
Volume252
Issue number1-3
DOIs
Publication statusPublished - 1 Aug 2005

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Light sources
solid state
Lasers
Solid state lasers
solid state lasers
Conversion efficiency
lasers
YAG lasers
slopes
output

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title = "Efficient all-solid-state Ce:LiLuF laser source at 309 nm",
abstract = "We report an all-solid-state laser giving 67 mW of 309 nm output when pumped with a frequency-quadrupled, all-solid-state Raman-shifted Nd:YAG laser. This efficient laser source has an optical-to-optical conversion efficiency of 41{\%}, with respect to 289 nm conversion to 309 nm, and slope efficiencies of up to 62{\%} (based on absorbed power).",
author = "Johnson, {K. S.} and Pask, {H. M.} and Withford, {M. J.} and Coutts, {D. W.}",
year = "2005",
month = "8",
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doi = "10.1016/j.optcom.2005.04.015",
language = "English",
volume = "252",
pages = "132--137",
journal = "Optics Communications",
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Efficient all-solid-state Ce:LiLuF laser source at 309 nm. / Johnson, K. S.; Pask, H. M.; Withford, M. J.; Coutts, D. W.

In: Optics Communications, Vol. 252, No. 1-3, 01.08.2005, p. 132-137.

Research output: Contribution to journalArticleResearchpeer-review

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AU - Johnson, K. S.

AU - Pask, H. M.

AU - Withford, M. J.

AU - Coutts, D. W.

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AB - We report an all-solid-state laser giving 67 mW of 309 nm output when pumped with a frequency-quadrupled, all-solid-state Raman-shifted Nd:YAG laser. This efficient laser source has an optical-to-optical conversion efficiency of 41%, with respect to 289 nm conversion to 309 nm, and slope efficiencies of up to 62% (based on absorbed power).

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T2 - Optics Communications

JF - Optics Communications

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